AbstractThis paper demonstrates that the addition of fluorinated block copolymers to PET solutions can be used to prepare PET films with controlled surface morphology, porosity and chemical composition, by exploiting the phenomenon known as breath figures (BF) formation during a spin-coating procedure. Surface features, such as number, depth and diameter of pores and chemical composition, can be tuned by varying the experimental conditions: relative humidity, solution composition and amount of the fluorinated block copolymer added to the PET solutions (in the range of 0.5\u201310 wt% with respect to PET). BF patterns are more evident at relatively high concentrations of PET (3 wt%) and content of fluorinated block copolymer (10 wt% with res...
The Poly(ethyl terephthalate) (PET) surfaces were modified by fluorocarbon plasmas. Angle-dependent ...
Poly(ethyl terephthalate) (PET) surfaces were modified by CF4 and CH4/CF4 plasmas in this paper. The...
Surface modification of amorphous PET in incompatible blends is demonstrated using fluorocarbon end-...
AbstractThis paper demonstrates that the addition of fluorinated block copolymers to PET solutions c...
In this work, Polyethylene terephthalate (PET), one of the most widely consumed polymers, has been u...
We describe the preparation of surfaces with controlled surface chemistry and topology combining bot...
Polyethylene terephthalate (PET) films were surface fluorinated in a reaction kettle using a F2/N2 b...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
Surface modification of PET by CF4/CH4 plasmas was described in detail. XPS technique was employed t...
Graduation date: 2017Polyethylene terephthalate (PET) polymer has been the material of choice for pa...
The arrangement of monomers and morphology of fluorinated copolymers of methyl methacrylate (MMA) we...
Breath figure (BF) process is a promising technique for fabricating honeycomb polymer films. It is u...
This chapter describes findings that focus on fluorous copolyoxetane soft block surface modifiers. T...
The surface morphology and crystallinity of biaxially drawn (BD) and amorphous poly(ethylene terepht...
This study developed a versatile and facile method for creating pores and tuning the porous structur...
The Poly(ethyl terephthalate) (PET) surfaces were modified by fluorocarbon plasmas. Angle-dependent ...
Poly(ethyl terephthalate) (PET) surfaces were modified by CF4 and CH4/CF4 plasmas in this paper. The...
Surface modification of amorphous PET in incompatible blends is demonstrated using fluorocarbon end-...
AbstractThis paper demonstrates that the addition of fluorinated block copolymers to PET solutions c...
In this work, Polyethylene terephthalate (PET), one of the most widely consumed polymers, has been u...
We describe the preparation of surfaces with controlled surface chemistry and topology combining bot...
Polyethylene terephthalate (PET) films were surface fluorinated in a reaction kettle using a F2/N2 b...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
Surface modification of PET by CF4/CH4 plasmas was described in detail. XPS technique was employed t...
Graduation date: 2017Polyethylene terephthalate (PET) polymer has been the material of choice for pa...
The arrangement of monomers and morphology of fluorinated copolymers of methyl methacrylate (MMA) we...
Breath figure (BF) process is a promising technique for fabricating honeycomb polymer films. It is u...
This chapter describes findings that focus on fluorous copolyoxetane soft block surface modifiers. T...
The surface morphology and crystallinity of biaxially drawn (BD) and amorphous poly(ethylene terepht...
This study developed a versatile and facile method for creating pores and tuning the porous structur...
The Poly(ethyl terephthalate) (PET) surfaces were modified by fluorocarbon plasmas. Angle-dependent ...
Poly(ethyl terephthalate) (PET) surfaces were modified by CF4 and CH4/CF4 plasmas in this paper. The...
Surface modification of amorphous PET in incompatible blends is demonstrated using fluorocarbon end-...